Assessment on Performance and Emission Characteristics of the CRDI Engine Fueled with Ethanol/Diesel Blends in Addition to EGR

IF 2.3 4区 工程技术 Q3 ENGINEERING, CHEMICAL International Journal of Chemical Engineering Pub Date : 2022-10-07 DOI:10.1155/2022/4413617
C. Dineshkumar, P. Jeyakumar, C. K. Arvinda Pandian, N. Rajmohan, P. Elumalai, N. Kamesh, Saboor Shaik, M. Sharifpur, N. Khalilpoor
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引用次数: 1

Abstract

In this research, the CRDI engine characteristics were analyzed with the aid of exhaust gas recirculation rate (EGR) adoption fueled with ethanol blends. The test fuels were the various blends with ethanol, such as (10% of ethanol + 90% of diesel) E10D90 (20% of ethanol + 80% of diesel), E20D80, and (30% of ethanol + 70% of diesel) E30D70. From the results, it was revealed that performance characteristics were reduced when using a higher concentration of the alcohols mixed with diesel fuel. The blend E30D70 showed that brake thermal efficiency (BTE) without EGR drops by 3.8%, increased by 9.14% of BSFC, a 9.25% decrease in oxides of nitrogen emissions, and slightly decreased CO and HC emissions compared to baseline diesel operation at 60% load condition. The blend E10D90 with 20% EGR shows the highest BTE of 8.87% when compared with base fuel, due to proper fuel mixture taking place in the inlet manifold. The results indicate that the engine runs smoothly, and E30D70 has chosen an optimum blend. A further experiment was performed using E30D70 with different rates of exhaust gas recirculation system. The addition of exhaust gas recirculation with E30D70 in the common rail diesel engine exhibits oxides of nitrogen emission, but in contrast, it was noticed to have inferior performance characteristics and drastically decreased HC and CO emissions. The hydrocarbon emission decreased E10D90, E20D80, and E30D70 at 60% load condition by 21.42%, 37.38%, and 48.76%, respectively. The blends E10D90, E20D80, and E30D70 decreased carbon dioxide by 7.9%, 30.08%, and 31.98%, respectively. The maximum reduction of NOx emission was observed at about 51.06% at an EGR rate of 20% with E30D70.
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乙醇/柴油混合燃料及EGR混合燃料CRDI发动机性能及排放特性评估
在本研究中,借助于采用乙醇混合燃料的废气再循环率(EGR),分析了CRDI发动机的特性。试验燃料是与乙醇的各种混合物,例如(10%的乙醇 + 90%的柴油)E10D90(20%的乙醇 + 80%的柴油)、E20D80和(30%的乙醇 + 70%的柴油)E30D70。结果表明,当使用更高浓度的醇类和柴油混合燃料时,性能特性会降低。混合E30D70表明,与60%负载条件下的基线柴油运行相比,没有EGR的制动热效率(BTE)下降了3.8%,增加了9.14%的BSFC,氮氧化物排放量下降了9.25%,CO和HC排放量略有下降。与基础燃油相比,具有20%EGR的混合燃油E10D90显示出8.87%的最高BTE,这是由于进气歧管中存在适当的燃油混合物。结果表明,发动机运行平稳,E30D70选择了最佳的混合气。使用具有不同废气再循环系统速率的E30D70进行进一步的实验。在共轨柴油发动机中添加E30D70的废气再循环表现出氮氧化物排放,但相比之下,它的性能特性较差,HC和CO排放显著降低。在60%负荷条件下,E10D90、E20D80和E30D70的碳氢化合物排放量分别减少了21.42%、37.38%和48.76%。共混物E10D90、E20D80和E30D70分别减少了7.9%、30.08%和31.98%的二氧化碳。在使用E30D70的20%的EGR率下,观察到NOx排放的最大减少为约51.06%。
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来源期刊
International Journal of Chemical Engineering
International Journal of Chemical Engineering Chemical Engineering-General Chemical Engineering
CiteScore
4.00
自引率
3.70%
发文量
95
审稿时长
14 weeks
期刊介绍: International Journal of Chemical Engineering publishes papers on technologies for the production, processing, transportation, and use of chemicals on a large scale. Studies typically relate to processes within chemical and energy industries, especially for production of food, pharmaceuticals, fuels, and chemical feedstocks. Topics of investigation cover plant design and operation, process design and analysis, control and reaction engineering, as well as hazard mitigation and safety measures. As well as original research, International Journal of Chemical Engineering also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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